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- W4293203220 abstract "The article addresses an urgent scientific and practical problem aimed at achieving more reliable and trouble-free operation of hybrid energy complexes with renewable energy sources operating both autonomously and in parallel with the electric grid. Possible solutions of protection systems against short-circuit currents and for preventing the occurrence of emergencies depending on the power plant electric power output capacity are considered. A current limiting device for a hybrid electric power complex containing photovoltaic and wind power installations has been developed. The device physical principle consists of using two magnetically coupled reactors, the windings of which are connected in parallel to the load circuit, but oppositely in the winding magnetic flux directions. The magnetic fluxes of the reactors are mutually compensated. The power line current is strictly equally divided between the reactor windings, because the current divider effect manifests itself with exactly such connection of the windings. By using the device, the fault current peak amplitude is limited on a time interval of about 100–120 ms after disconnection of the mains circuit breaker. The steady-state fault current is limited at a level close to the rated current value. The electromagnetic processes occurring in the developed device have been studied on a computer model." @default.
- W4293203220 created "2022-08-27" @default.
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- W4293203220 date "2022-01-01" @default.
- W4293203220 modified "2023-09-25" @default.
- W4293203220 title "A Current Limiting Device for Protection of Electric Power Complexes with Renewable Energy Sources" @default.
- W4293203220 doi "https://doi.org/10.24160/0013-5380-2022-1-35-45" @default.
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